Teaching

From waveforms to physical understanding

My teaching is research-led, inclusive and grounded in real geophysical observations.

Teaching philosophy

I help students understand the physical principles of seismology while gaining confidence with modern data, software and scientific literature. Courses follow a continuous cycle: formulate a physical question, identify an observable, process and visualize data, evaluate uncertainty and communicate a defensible interpretation.

Reproducible computation, critical thinking, collaboration and scientific communication are integral parts of the scientific method. Project-based learning gives students a structured route from theory to imperfect, real-world waveform data.

Selected teaching

Advanced Methods in Observational Seismology

University of Potsdam — seismic acquisition and quality control, detection, location, focal mechanisms, clustering, receiver functions, ambient noise and reproducible reporting.

Moment Tensor Inversion

GFZ International Training Course in Seismology and Seismic Hazard Assessment.

Theory of Elastic Waves

Teaching Assistant, University of Potsdam, Germany.

Professional English

Computer Programming Program, Antalya Bilim University.

Plate Tectonics & Crustal Dynamics

Teaching Assistant, Kandilli Observatory, Boğaziçi University.

Methods

Learning with open tools

Students work with Pyrocko, Qseek, Seiscloud, SeisPy, ObsPy and Git-based workflows, combining short conceptual lectures, guided coding, collaborative problem solving and independent projects.

Qualification

International Teaching Professionals

I completed the University of Potsdam's year-long ITP program in 2024–2025, with training in course alignment, diversity-sensitive teaching, digital tools, feedback and competence-oriented assessment.